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Liquid Fuel Injection Strategy to Reduce Sensitivity to Liquid Physical Properties

机译:液体燃料喷射策略,以降低对液体物理性质的敏感性

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Changes in fuel properties can alter injection and distribution of the fuel ahead of the combustion process. JP-8 properties can vary from batch to batch and with temperature. Furthermore, alternative fuels may have different physical properties than the baseline JP-8 fuel. By mitigating the dependency of the fuel injection process on liquid physical properties, better control of the subsequent combustion process can be attained, and fuels can be changed in an engine with more confidence that performance won't be affected. This presentation summarizes a strategy that has been developed for liquid fuel injection using plain jets that reduce the sensitivity of the injection process to liquid physical properties such as viscosity, surface tension, and density. CFD simulations and detailed experiments were carried out to understand and confirm the desired performance results associated with decoupling the injection process from liquid physical properties. Laser sheet imaging, high speed video, and laser diffraction drop sizing were used in the experimental validation. The results show that the strategy utilized (1) significantly reduces sensitivity of the injection process to changes in fuel properties and (2) enhances atomization (i.e., reduces droplet size) compared to a baseline configuration.
机译:在燃料特性的变化可以改变燃烧过程的燃料提前喷射和分布。 JP-8的属性可以变化从批次,并用温度。此外,替代燃料可具有比基线JP-8的燃料不同的物理性质。通过减轻对液体的物理性质的燃料喷射过程的依赖性,随后的燃烧过程的更好的控制可以实现,并且燃料可在发动机与更多的信心,性能不会受到影响而改变。这个报告总结已用于液体燃料喷射使用普通射流减少喷射过程的液体物理性能,例如粘度,表面张力,和密度的灵敏度被开发的策略。 CFD模拟和详述实验进行了解和确认与来自液体的物理性质的去耦注射过程相关联的期望的性能结果。激光片成像,高速视频和激光衍射降上浆在实验验证中使用。结果表明,利用(1)的策略显著降低了注射过程的灵敏度到燃料属性的变化和(2)提高雾化(即,减小液滴尺寸)相比基线的配置。

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